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Optimization of biohydrogen inoculum development via a hybrid pH and microwave treatment technique - Semi pilot scale production assessment

机译:通过混合pH和微波处理技术优化生物氢接种物的开发-半规模试生产评估

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摘要

The interactive effect of a hybrid pH and microwave pre-treatment on a mixed inoculum for biohydrogen production was investigated. Response surface methodology (RSM) was employed to obtain the optimum pre-treatment conditions of pH, microwave duration and microwave intensity for maximum hydrogen yield. The obtained model had a coefficient of correlation (R~2) of 0.87. The optimum inoculum pre-treatment conditions predicted were pH 11 and 2 min microwave treatment at 860 W and the validation experiments demonstrated a 32.41% increase on hydrogen yield. Two semi pilot scale-up processes were carried out in a 10 L bioreactor initiated in batch mode with 7 L working volume using the optimally pre-treated inoculum. In the absence of pH control, 46% of glucose was utilized corresponding to a molar hydrogen yield of 1.78 mol H_2/ mol glucose and a maximum hydrogen fraction of 49.3% whereas under controlled pH environment, a twofold increase in glucose utilization was obtained which corresponds to a molar hydrogen yield of 2.07 mol H_2/mol glucose and a maximum hydrogen concentration of 56.4%. The controlled fermentation significantly improved biohydrogen production in the scale-up process and methane production was completely suppressed suggesting the effectiveness of the combined pre-treatment to enrich hydrogen producing bacteria. Viable counts and microscopical analysis indicated the presence of hydrogen producing endo-spore forming presumptive Clostridum species.
机译:研究了混合pH和微波预处理对混合接种物产生生物氢的相互作用的影响。响应表面方法(RSM)用于获得最佳的pH,微波持续时间和微波强度的最佳预处理条件,从而获得最大的氢产量。所得模型的相关系数(R〜2)为0.87。预测的最佳接种物预处理条件为pH 11和860 W微波处理2分钟,验证实验表明氢气产率提高了32.41%。使用最佳预处理的接种物,在以7 L工作体积分批模式启动的10 L生物反应器中进行了两个半中试放大工艺。在没有pH值控制的情况下,利用了46%的葡萄糖,对应的摩尔氢产率为1.78 mol H_2 / mol葡萄糖,最大氢分数为49.3%,而在受控的pH环境下,葡萄糖利用率增加了两倍。氢的摩尔产率为2.07 mol H_2 / mol葡萄糖,最大氢浓度为56.4%。在规模扩大的过程中,受控发酵显着改善了生物氢的产生,甲烷的产生被完全抑制了,这表明联合预处理可有效富集产氢细菌。可行的计数和显微镜分析表明存在产生氢的形成内生孢子的假想梭菌物种。

著录项

  • 来源
    《International journal of hydrogen energy》 |2014年第11期|5607-5616|共10页
  • 作者单位

    Discipline of Microbiology, School of Life Sciences, University of KwaZulu-Natal, Private bag XO1, Scottsville 3209, Pietermaritzburg, South Africa;

    Discipline of Microbiology, School of Life Sciences, University of KwaZulu-Natal, Private bag XO1, Scottsville 3209, Pietermaritzburg, South Africa;

    Discipline of Microbiology, School of Life Sciences, University of KwaZulu-Natal, Private bag XO1, Scottsville 3209, Pietermaritzburg, South Africa;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Inoculum pre-treatment; Biohydrogen production; Pilot scale-up; Dark fermentation; Optimization;

    机译:接种物预处理;生物氢生产;试点扩大规模;黑暗发酵优化;
  • 入库时间 2022-08-18 00:24:03

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